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Two methods for estimating limits to large-scale wind power generation

机译:估算大型风力发电极限的两种方法

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摘要

Wind turbines remove kinetic energy from the atmospheric flow, which reduces wind speeds and limits generation rates of large wind farms. These interactions can be approximated using a vertical kinetic energy (VKE) flux method, which predicts that the maximum power generation potential is 26% of the instantaneous downward transport of kinetic energy using the preturbine climatology. We compare the energy flux method to the Weather Research and Forecasting (WRF) regional atmospheric model equipped with a wind turbine parameterization over a 105 km2 region in the central United States. The WRF simulations yield a maximum generation of 1.1 We⋅m−2, whereas the VKE method predicts the time series while underestimating the maximum generation rate by about 50%. Because VKE derives the generation limit from the preturbine climatology, potential changes in the vertical kinetic energy flux from the free atmosphere are not considered. Such changes are important at night when WRF estimates are about twice the VKE value because wind turbines interact with the decoupled nocturnal low-level jet in this region. Daytime estimates agree better to 20% because the wind turbines induce comparatively small changes to the downward kinetic energy flux. This combination of downward transport limits and wind speed reductions explains why large-scale wind power generation in windy regions is limited to about 1 We⋅m−2, with VKE capturing this combination in a comparatively simple way.
机译:风力涡轮机从大气流中除去动能,这降低了风速并限制了大型风电场的发电量。可以使用垂直动能(VKE)通量方法来近似这些相互作用,该方法预测使用前涡轮机气候学,最大发电潜力为动能瞬时向下传递的26%。我们将能量通量方法与美国中部10 5 km 2 区域中装有风力涡轮机参数化的气象研究与预报(WRF)区域大气模型进行了比较。 WRF模拟产生的最大发电量为1.1 We·m −2 ,而VKE方法预测时间序列,却低估了最大发电量约50%。由于VKE从前涡轮机气候学推导了发电极限,因此未考虑来自自由大气的垂直动能通量的潜在变化。在夜间,当WRF估计值约为VKE值的两倍时,这种变化非常重要,因为风力涡轮机会与该区域中分离的夜间低空急流相互作用。白天的估算值最好达到20%,因为风力涡轮机会引起向下动能通量的较小变化。向下运输极限和风速降低的这种组合解释了为什么在大风区域将大规模风力发电限制在1We⋅m -2 ,而VKE则以相对简单的方式捕获了这种组合。

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